Journal Title:Heteroatom Chemistry
Heteroatom Chemistry brings together a broad, interdisciplinary group of chemists who work with compounds containing main-group elements of groups 13 through 17 of the Periodic Table, and certain other related elements. The fundamental reactivity under investigation should, in all cases, be concentrated about the heteroatoms. It does not matter whether the compounds being studied are acyclic or cyclic; saturated or unsaturated; monomeric, polymeric or solid state in nature; inorganic, organic, or naturally occurring, so long as the heteroatom is playing an essential role. Computational, experimental, and combined studies are equally welcome.
Subject areas include (but are by no means limited to):
-Reactivity about heteroatoms for accessing new products or synthetic pathways
-Unusual valency main-group element compounds and their properties
-Highly strained (e.g. bridged) main-group element compounds and their properties
-Photochemical or thermal cleavage of heteroatom bonds and the resulting reactivity
-Uncommon and structurally interesting heteroatom-containing species (including those containing multiple bonds and catenation)
-Stereochemistry of compounds due to the presence of heteroatoms
-Neighboring group effects of heteroatoms on the properties of compounds
-Main-group element compounds as analogues of transition metal compounds
-Variations and new results from established and named reactions (including Wittig, Kabachnik–Fields, Pudovik, Arbuzov, Hirao, and Mitsunobu)
-Catalysis and green syntheses enabled by heteroatoms and their chemistry
-Applications of compounds where the heteroatom plays a critical role.
In addition to original research articles on heteroatom chemistry, the journal welcomes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
杂原子化学汇集了一个广泛的跨学科化学家团队,他们致力于研究含有元素周期表第 13 至 17 族主族元素以及某些其他相关元素的化合物。在所有情况下,所研究的基本反应性都应集中在杂原子上。所研究的化合物是无环的还是环状的并不重要。饱和或不饱和;单体、聚合或固态;无机的、有机的或天然存在的,只要杂原子发挥重要作用。计算、实验和组合研究同样受欢迎。
学科领域包括(但绝不限于):
-关于杂原子获得新产品或合成途径的反应性
-奇价主族元素化合物及其性质
-高应变(例如桥接)主族元素化合物及其性质
-杂原子键的光化学或热裂解和由此产生的反应性
-不常见且结构有趣的含杂原子物种(包括那些含有多个键和连接的物种)
-由于杂原子的存在而产生的化合物的立体化学
-杂原子邻基对化合物性质的影响
-作为过渡金属化合物类似物的主族元素化合物
-已建立和命名的反应(包括 Wittig、Kabachnik-Fields、Pudovik、Arbuzov、Hirao 和 Mitsunobu)的变体和新结果
-杂原子及其化学催化和绿色合成
-杂原子起关键作用的化合物的应用。
除了关于杂原子化学的原创研究文章外,该杂志还欢迎有针对性的评论文章,这些文章检查了最先进的技术、确定新兴趋势并为发展领域提出了未来的方向。
大类学科 | 小类学科 | 分区 | Top期刊 | 综述期刊 |
化学 | CHEMISTRY, MULTIDISCIPLINARY 化学综合 | 4区 | 是 | 是 |
大类学科 | 小类学科 | 分区 |
化学 | CHEMISTRY, MULTIDISCIPLINARY 化学综合 | 4区 |
期刊名称 | 领域 | 中科院分区 | 影响因子 |
Topics In Organometallic Chemistry | 化学 | 4区 | 2.917 |
Indian Journal Of Chemistry Section B-organic Chemistry Including Medicinal Chem | 化学 | 4区 | 0.388 |
Chemie In Unserer Zeit | 化学 | 4区 | 0.800 |
Macroheterocycles | 化学 | 4区 | 1.400 |
High Energy Chemistry | 化学 | 4区 | 0.700 |
Journal Of Chemical Crystallography | 化学 | 4区 | 0.800 |